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Rugged Island-Bridge Inorganic Electronics Mounted on Locally Strain-Isolated Substrates

Title of paper
Rugged Island-Bridge Inorganic Electronics Mounted on Locally Strain-Isolated Substrates
Author
[박태호교수 연구실] 심하게 구부리거나 충격을 가해도 높은 기계적 안정성을 유지할 수 있는 하이브리드 고분자 기반 신축성 전자장치 개발
Publication in journal
ACS Nano 2024, 18, 13061−13072
Publication date
20240509

 

Abstract: Various strain isolation strategies that combine rigid and stretchable regions for stretchable electronics were recently proposed, but the vulnerability of inorganic materials to mechanical stress has emerged as a major impediment to their performance. We report a strain-isolation system that combines heteropolymers with different elastic moduli (i.e., hybrid stretchable polymers) and utilize it to construct a rugged island-bridge inorganic electronics system. Two types of prepolymers were simultaneously cross-linked to form an interpenetrating polymer network at the rigid–stretchable interface, resulting in a hybrid stretchable polymer that exhibited efficient strain isolation and mechanical stability. The system, including stretchable micro-LEDs and microheaters, demonstrated consistent operation under external strain, suggesting that the rugged island-bridge inorganic electronics mounted on a locally strain-isolated substrate offer a promising solution for replacing conventional stretchable electronics, enabling devices with a variety of form factors.

 

 

DOI: 10.1021/acsnano.4c01759

LINK: https://pubs.acs.org/doi/full/10.1021/acsnano.4c01759